Anti-interference, soft, skin-friendly, Q-elastic and antibacterial lanyard data line with high swing performance
By introducing an antibacterial silicone layer, a magnetic rubber layer, a shielding layer, and an elastic wire structure into the data cable, the issues of portability and security of the data cable are solved, achieving convenient storage, antibacterial properties, and anti-interference effects.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GUANGDONG MINGJI HI TECH ELECTRONICS CO LTD
- Filing Date
- 2025-06-04
- Publication Date
- 2026-05-26
AI Technical Summary
Data cables are prone to tangling and knotting when carried or stored, taking up a lot of space, affecting the convenience of use, and bacteria can easily spread on their surface, posing a safety hazard.
The cable features an antibacterial silicone layer, a magnetic rubber layer, and a shielding layer, combined with a bulletproof wire structure to enhance its flexibility, antibacterial properties, and mechanical performance. The magnetic rubber layer allows for easy storage, the shielding layer reduces electronic interference, and the bulletproof wire improves mechanical performance.
It enables convenient storage of data cables, improves ease of use and safety, extends service life, reduces the risk of bacterial transmission when in contact with skin, and reduces electronic interference.
Smart Images

Figure CN224287811U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of data cable technology, specifically to a lanyard data cable with high swing performance, anti-interference, soft, skin-friendly, elastic and antibacterial properties. Background Technology
[0002] Data cables are common charging accessories for electronic devices. When carried or stored, they are prone to stacking, tangling, and knotting, making them look messy. This is especially true in applications where data cables need to be stored in narrow spaces such as pockets and backpacks. Messy data cables not only take up more space but also seriously affect the user's access to other items in the same space, making them inconvenient and resulting in a poor user experience. Moreover, during use, data cables often come into contact with and rub against the skin, transferring bacteria from the surface of the data cable to the skin. Furthermore, the friction from the data cable can easily cause skin damage, posing a safety hazard. Utility Model Content
[0003] This invention addresses the technical issues of portability and safety in data cables by providing a lanyard data cable with high swing performance, anti-interference, soft, skin-friendly, elastic, and antibacterial properties. It not only facilitates storage but also has antibacterial effects, significantly improving both convenience and safety.
[0004] The technical solution adopted by this utility model is to provide a lanyard data cable with high swing performance, anti-interference, soft, skin-friendly, elastic and antibacterial, including a data cable body and connection ports disposed at both ends of the data cable body. The data cable body includes, from the inside to the outside, a core wire, a shielding layer, a magnetic rubber layer and an antibacterial silicone layer, and a bulletproof wire disposed between the core wires. The bulletproof wire is located inside the shielding layer and fills between the core wires. The shielding layer, the magnetic rubber layer and the antibacterial silicone layer are sequentially wrapped around the core wires.
[0005] The connection port is a Lightning interface, a Type-C interface, or a USB interface.
[0006] The connection port includes a conductive shell, an insulating core, a PIN pin, a PCB board, and a sealing layer disposed in the inner cavity at the rear end of the conductive shell; the insulating core is disposed inside the conductive shell, the PIN pin is disposed inside the insulating core, the PCB board is disposed at the rear end of the conductive shell and electrically connected to the rear end of the PIN pin inside the conductive shell, the sealing layer wraps around the connection position between the PIN pin and the PCB board, and the core wire is electrically connected to the PCB board.
[0007] The connection port also includes a sealed housing located at the rear end of the conductive housing, and the PCB board and the data cable body are located inside the sealed housing.
[0008] The sealed housing is filled with a filler adhesive layer and wrapped around the PCB board.
[0009] The surface of the PIN pin is coated with a film layer.
[0010] The beneficial effects of this utility model are that it provides a high-performance, interference-resistant, soft, skin-friendly, elastic, and antibacterial lanyard data cable. The antibacterial silicone layer is made of antibacterial silicone material, which is soft and skin-friendly, and can effectively prevent bacteria, thus improving the safety of the data cable. The magnetic rubber layer is made of rubber with magnetic material, which can facilitate the carrying and storage of the data cable and effectively prevent tangling. The shielding layer can prevent the data cable from interfering with other electronic products. The bulletproof wire further improves the mechanical performance of the data cable and extends its service life. Attached Figure Description
[0011] Figure 1 This is a schematic diagram of the structure of this utility model;
[0012] Figure 2 This is a schematic diagram of the cross-sectional structure of the data cable body;
[0013] Figure 3 This is a schematic diagram of the connection port structure;
[0014] Figure 4 This is an exploded view of the connection ports.
[0015] In the attached diagram, 1 is the data cable body, 2 is the connection port, 3 is the core wire, 4 is the shielding layer, 5 is the magnetic rubber layer, 6 is the antibacterial silicone layer, 7 is the bulletproof wire, 8 is the conductive shell, 9 is the insulating core, 10 is the PIN pin, 11 is the PCB board, 12 is the sealing layer, and 13 is the sealed shell. Detailed Implementation
[0016] like Figure 1-4 As shown, this utility model provides a high-performance, interference-resistant, soft, skin-friendly, elastic, and antibacterial lanyard data cable, including a data cable body 1 and connection ports 2 disposed at both ends of the data cable body 1. The data cable body 1 includes, from the inside out, a core wire 3, a shielding layer 4, a magnetic rubber layer 5, an antibacterial silicone layer 6, and a bulletproof wire 7 disposed between the core wires 3. The bulletproof wire 7 is located inside the shielding layer 4 and fills the spaces between the core wires 3. The shielding layer 4, the magnetic rubber layer 5, and the antibacterial silicone layer 6 are sequentially wrapped around the core wires 3.
[0017] The antibacterial silicone layer 6 is made of antibacterial silicone material, with a soft and skin-friendly surface, and can effectively prevent bacteria, improving the safety of the data cable. The magnetic rubber layer 5 is made of rubber with magnetic material, which can make the data cable easy to carry and store, and effectively prevent tangling. The shielding layer 4 can prevent the data cable from interfering with other electronic products. The bulletproof wire 7 further improves the mechanical performance of the data cable, and has passed more than 10,000 high-intensity swing tests, extending the service life of the data cable.
[0018] like Figure 1 As shown, the connection port 2 is a Lightning interface, a Type-C interface, or a USB interface. The type of connection port 2 can be a Lightning interface, a Type-C interface, or a USB interface, and can be selected according to needs.
[0019] like Figure 3-4 As shown, the connection port 2 includes a conductive shell 8, an insulating core 9, a PIN pin 10, a PCB board 11, and a sealing layer 12 disposed in the inner cavity of the rear end of the conductive shell 8; the insulating core 9 is disposed inside the conductive shell 8, the PIN pin 10 is disposed inside the insulating core 9, the PCB board 11 is disposed at the rear end of the conductive shell 8 and electrically connected to the rear end of the PIN pin 10 inside the conductive shell 8, the sealing layer 12 wraps around the connection position between the PIN pin 10 and the PCB board 11, and the core wire 3 is electrically connected to the PCB board 11.
[0020] An insulating core 9 is installed inside the conductive shell 8, and a PIN pin 10 is installed inside the insulating core 9. The PCB board 11 is located at the rear end of the conductive shell 8 and is electrically connected to the PIN pin 10 inside the insulating core 9. A sealing layer 12 is filled at the connection point to seal the connection between the PIN pin 10 and the PCB board 11, and at the same time, the inner cavity at the rear end of the conductive shell 8 is sealed. The data cable body 1 is electrically connected to the PCB board 11. This design effectively prevents rainwater from flowing into the PCB board 11 from the inner cavity at the front end of the conductive shell 8, further improving the waterproof effect and safety of the data cable.
[0021] like Figure 3-4 As shown, the connection port 2 also includes a sealing housing 13 disposed at the rear end of the conductive housing 8, and the ends of the PCB board 11 and the data cable body 1 are located inside the sealing housing 13. The sealing housing 13 provides protection for the connection position of the PCB board 11 and the data cable body 1.
[0022] like Figure 3-4 As shown, the sealed housing 13 is filled with a filler adhesive layer and wrapped around the PCB board 11. The filler adhesive layer inside the sealed housing 13 can further improve the protective effect and increase the waterproof effect.
[0023] like Figure 3-4 As shown, the PIN pin 10 has a coating layer on its surface. The nano-coating on the surface of the PIN pin 10 can effectively prevent short circuits when the PIN pin 10 comes into contact with rainwater.
Claims
1. A high-performance, interference-resistant, soft, skin-friendly, elastic, and antibacterial lanyard data cable, comprising a data cable body (1) and connection ports (2) disposed at both ends of the data cable body (1), characterized in that: The data cable body (1) includes, from the inside out, a core wire (3), a shielding layer (4), a magnetic rubber layer (5), an antibacterial silicone layer (6), and a bulletproof wire (7) disposed between the core wires (3). The bulletproof wire (7) is located inside the shielding layer (4) and fills between the core wires (3). The shielding layer (4), the magnetic rubber layer (5), and the antibacterial silicone layer (6) are sequentially wrapped around the core wires (3).
2. The lanyard data cable with high swing performance, anti-interference, soft, skin-friendly, elastic, and antibacterial properties according to claim 1, characterized in that: The connection port (2) is a Lightning interface, a Type-C interface, or a USB interface.
3. The lanyard data cable with high swing performance, anti-interference, soft, skin-friendly, elastic, and antibacterial properties according to claim 1, characterized in that: The connection port (2) includes a conductive shell (8), an insulating core (9), a PIN pin (10), a PCB board (11), and a sealing layer (12) disposed in the inner cavity of the rear end of the conductive shell (8); the insulating core (9) is disposed inside the conductive shell (8), the PIN pin (10) is disposed inside the insulating core (9), the PCB board (11) is disposed at the rear end of the conductive shell (8) and electrically connected to the rear end of the PIN pin (10) inside the conductive shell (8), the sealing layer (12) wraps around the connection position of the PIN pin (10) and the PCB board (11), and the core wire (3) is electrically connected to the PCB board (11).
4. The lanyard data cable with high swing performance, anti-interference, soft, skin-friendly, elastic, and antibacterial properties according to claim 3, characterized in that: The connection port (2) also includes a sealed housing (13) disposed at the rear end of the conductive housing (8), and the ends of the PCB board (11) and the data cable body (1) are located inside the sealed housing (13).
5. The lanyard data cable with high swing performance, anti-interference, soft, skin-friendly, elastic, and antibacterial properties according to claim 4, characterized in that: The sealed housing (13) is filled with a filler adhesive layer and wrapped around the PCB board (11).
6. The lanyard data cable with high swing performance, anti-interference, soft, skin-friendly, elastic, and antibacterial properties according to claim 3, characterized in that: The surface of the PIN pin (10) is provided with a coating layer.